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Description O A Thermo-Inelastic body with A moving solid/liquid interface and simulation of the welding process

机译:描述O具有固/液界面移动的热弹性体,模拟焊接过程

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摘要

Conservation laws of mass, momentum, and energy for the thermo-inelastic body in the region involving the moving interface between the solid and liquid are introduced to derive jump conditions of velocity, stress, and energy on the interface as the sequence of local form for the generalized Reynolds transport theorem. The jump condition of energy is revealed to be the generalized Stefan condition for moving interface problems. The finite element formulation is used to analyze the modes of flow, deformation, and stresses in a melting or solidifying process by employing a viscoplastic constitutive equation that describes the mechanical behavior of both the solid and liquid phases. The mathematical formalism is applied to simulate bead-on plate welding.
机译:引入了涉及固体和液体之间移动界面的区域中的热弹性体的质量,动量和能量守恒定律,以导出界面上速度,应力和能量的跳跃条件,作为局部形式的序列。广义雷诺输运定理。能量的跳跃条件被揭示为运动界面问题的广义Stefan条件。通过采用描述固相和液相机械性能的粘塑性本构方程,有限元公式可用于分析熔融或凝固过程中的流动,变形和应力模式。数学形式主义可用于模拟珠焊平板焊接。

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